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首页> 外文期刊>Journal of bacteriology >Role of Escherichia coli DNA Polymerase I in Conferring Viability upon the dnaN159 Mutant Strain
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Role of Escherichia coli DNA Polymerase I in Conferring Viability upon the dnaN159 Mutant Strain

机译:大肠杆菌DNA聚合酶I在赋予dnaN159突变株活力方面的作用

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The Escherichia coli dnaN159 allele encodes a mutant form of the β-sliding clamp (β159) that is impaired for interaction with the replicative DNA polymerase (Pol), Pol III. In addition, strains bearing the dnaN159 allele require functional Pol I for viability. We have utilized a combination of genetic and biochemical approaches to characterize the role(s) played by Pol I in the dnaN159 strain. Our findings indicate that elevated levels of Pol I partially suppress the temperature-sensitive growth phenotype of the dnaN159 strain. In addition, we demonstrate that the β clamp stimulates the processivity of Pol I in vitro and that β159 is impaired for this activity. The reduced ability of β159 to stimulate Pol I in vitro correlates with our finding that single-stranded DNA (ssDNA) gap repair is impaired in the dnaN159 strain. Taken together, these results suggest that (i) the β clamp-Pol I interaction may be important for proper Pol I function in vivo and (ii) in the absence of Pol I, ssDNA gaps may persist in the dnaN159 strain, leading to lethality of the dnaN159 ΔpolA strain.
机译:大肠杆菌dnaN159 等位基因编码β滑动钳位(β159)的突变形式,该突变形式与复制DNA聚合酶(Pol)Pol III的相互作用受损。此外,带有 dnaN159 等位基因的菌株需要功能性Pol I才能保持活力。我们利用遗传和生化方法的组合来表征Pol I在dnaN159 菌株中的作用。我们的发现表明,升高的Pol I水平会部分抑制 dnaN159 菌株的温度敏感型生长表型。此外,我们证明了β钳夹可在体外刺激Pol I的合成能力,并且β159的这种活性受到损害。 β159体外刺激Pol I的能力降低与我们的发现有关,即 dnaN159 菌株中单链DNA(ssDNA)缺口修复受损。综上所述,这些结果表明:(i)β钳-Pol I相互作用对于体内正确的Pol I功能可能很重要;(ii)在没有Pol I的情况下, dnaN159可能仍存在ssDNA缺口菌株,导致 dnaN159 Δ polA 菌株的致死性。

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